Endothelial-adipocyte Cx43 Mediated Gap Junctions Can Regulate Adiposity

Author:

Luse Melissa A12,Dunaway Luke S1,Nyshadham Shruthi1,Carvalho Alicia1,Sedovy Meghan W3,Ruddiman Claire A14,Tessema Rachel1,Hirschi Karen5,Johnstone Scott R3,Isakson Brant E12ORCID

Affiliation:

1. Robert M. Berne Cardiovascular Research Center, University of Virginia School of Medicine , Charlottesville, 22903, VA , USA

2. Department of Molecular Physiology and Biophysics, University of Virginia School of Medicine , Charlottesville, 22903, VA , USA

3. The Fralin Biomedical Research Institute at Virginia Tech Carilion, Center for Vascular and Heart Research , Roanoke, 24016, VA , USA

4. Department of Pharmacology, University of Virginia School of Medicine , Charlottesville, 22903, VA , USA

5. Department of Cell Biology, University of Virginia School of Medicine , Charlottesville, 22903, VA , USA

Abstract

Abstract Obesity is a multifactorial metabolic disorder associated with endothelial dysfunction and increased risk of cardiovascular disease. Adipose capillary adipose endothelial cells (CaECs) plays a crucial role in lipid transport and storage. Here, we investigated the mechanisms underlying CaEC-adipocyte interaction and its impact on metabolic function. Single-cell RNA sequencing (scRNAseq) revealed an enrichment of fatty acid handling machinery in CaECs from high fat diet (HFD) mice, suggesting their specialized role in lipid metabolism. Transmission electron microscopy (TEM) confirmed direct heterocellular contact between CaECs and adipocytes. To model this, we created an in vitro co-culture transwell system to model the heterocellular contact observed with TEM. Contact between ECs and adipocytes in vitro led to upregulation of fatty acid binding protein 4 in response to lipid stimulation, hinting intercellular signaling may be important between ECs and adipocytes. We mined our and others scRNAseq datasets to examine which connexins may be present in adipose capillaries and adipocytes and consistently identified connexin 43 (Cx43) in mouse and humans. Genetic deletion of endothelial Cx43 resulted in increased epididymal fat pad (eWAT) adiposity and dyslipidemia in HFD mice. Consistent with this observation, phosphorylation of Cx43 at serine 368, which closes gap junctions, was increased in HFD mice and lipid-treated ECs. Mice resistant to this post-translational modification, Cx43S368A, were placed on an HFD and were found to have reduced eWAT adiposity and improved lipid profiles. These findings suggest Cx43-mediated heterocellular communication as a possible regulatory mechanism of adipose tissue function.

Funder

National Institutes of Health

University of Virginia

Lipedema Foundation

Publisher

Oxford University Press (OUP)

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